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XRD66L92AIP View Datasheet(PDF) - Exar Corporation

Part Name
Description
Manufacturer
XRD66L92AIP Datasheet PDF : 12 Pages
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XRD66L92
LINV have internal pull down devices. Please see the simplified
logic circuit (Figure 5.)
gram shaping. 3mV maximum per tap is recommended for ap-
plications above 85°C.
MINV or LINV
1M
DQ
latch
EN
CLK
DQ
latch
EN
SDO
Figure 5. MINV, LINV Simplified Logic Circuit
VIN Analog Input
The XRD66L92 has a switched capacitor track and hold input
stage. VIN is sampled at the high to low clock transition.
Figure 6. shows the equivalent input circuit.
APPLICATION NOTES
VIN signals should not exceed VDD +0.5V or go below GND
–0.5V. All pins have internal protection diodes that will protect
them from short transients (<100µs) outside the supply range.
All GND pins are connected internally through the P– sub-
strate. DC voltage differences between these pins will cause
undesirable internal substrate currents.
The power supply (VDD) and reference voltage (VRT & VRB)
pins should be decoupled with 0.1µF and 10µF capacitors to
GND, placed as close to the chip as possible.
The digital outputs should not drive long wires or buses. The
capacitive coupling and reflections will contribute noise to the
conversion.
The reference tap pins can be used to create piecewise linear
transfer functions. By forcing custom voltages on these pins, a
7-segment transfer function can be made. See Figure 7.
VDD
50
CL
41pF 50
VIN
GND
8pF
CL
VRT + VRB +
1.5pF
CL
2
CL = Clock
Figure 6. Equivalent Input Circuit
Reference Ladder Taps
These taps connect to every sixteenth point along the refer-
ence ladder; R4 is 4/16th up from VRB, R7 is 7/16ths up from
VRB. These taps can also be used to alter the transfer curve of
the ADC. The internal interconnect resistance from the pin to
the ladder is less than 3for the even numbered taps, (i.e.
R4,R6, etc.) and is approximately 10for the odd numbered
taps.
Changing the transfer curve may be desirable to enhance or
reduce the probability of codes for certain ranges of VIN. This is
often referred to as probability density function shaping, or histo-
DAC8
DAC7
DAC6
DAC5
DAC4
DAC3
DAC2
DAC1
V8
VRT
V7
R12
V6
R9
V5
R8
V4
R7 XRD66L92
V3
R5
V2
R1
V1
VRB
Only the Ladder detail shown.
Figure 7. A/D with Programmed Ladder Control for
Creating a Piecewise Linear Transfer Function
Rev. 1.00
8

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